Erratum for Roman-Sosa et al., "Virus-neutralizing monoclonal antibodies against bovine viral diarrhea virus and classical swine fever virus target conformational and linear epitopes on E2 glycoprotein subdomains". [PDF]
Roman-Sosa G +6 more
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Immunoinformatics design of an mRNA vaccine against classical swine fever virus using conserved E2 protein and NS3 T-lymphocyte epitopes. [PDF]
Banico EC +3 more
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Essential role of <i>cis</i>-encoded mature NS3 in the genome packaging of classical swine fever virus. [PDF]
Lamp B +7 more
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An attenuated African swine fever virus expressing the E2 glycoprotein of classical swine fever virus protects pigs against challenge of both viruses. [PDF]
Zhang J +11 more
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Optimizing Oral Vaccine Distribution Strategies for Wild Boars Through Bias-Corrected Habitat Modeling: A Case Study of Classical Swine Fever Control in Japan. [PDF]
Ito S +5 more
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Computational investigation in inhibitory effects of amantadine on classical swine fever virus p7 ion channel activity. [PDF]
Chen X, Wang X.
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Stability of closed and needle-punctured vials of Porvac® subunit vaccine against classical swine fever subjected to thermal stress. [PDF]
Sardina-González T +14 more
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Complete genome sequence of a novel classical swine fever virus subgenotype 1.1 detected from a live Japanese encephalitis virus vaccine in South Korea. [PDF]
Jang G, Lee C.
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Common host factors for internal ribosomal entry site-mediated translation of viral genomic RNA: An investigation in foot-and-mouth disease and classical swine fever viruses. [PDF]
Akhter R +4 more
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Veterinary Microbiology, 2014Classical swine fever (CSF), caused by Classical swine fever virus (CSFV), is an OIE-listed, highly contagious, often fatal disease of swine worldwide. Currently, the disease is controlled by prophylactic vaccination in China and many other countries using the modified live vaccines derived from C-strain, which was developed in China in the mid-1950s ...
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